PubMed Health⌕ Search

Biomedical subjects

C Hartmann

Publications and source records attributed to C Hartmann.

At least 73 records · Page 4Linked to original sources

Horseradish peroxidase Phe172-->Tyr mutant. Sequential formation of compound I with a porphyrin radical cation and a protein radical.

A gene coding for the F172Y mutant of horseradish peroxidase isozyme C (HRP) has been constructed and expressed in both Spodoptera frugiperda (SF-9) and Trichoplusia ni egg cell homogenate (HighFive) cells. Homology modeling with respect to three peroxidases for which crystal structures are available places Phe172 on the proximal side of the heme in the vicinity of porphyrin pyrrole ring C. The pH optimum and spectroscopic properties of the F172Y mutant are essentially identical to those of wild type HRP. Vmax values show that the mutant protein retains most of the guaiacol oxidizing activity. Stopped flow studies indicate that Compound I is formed with H2O2 at the same rate (kappa 1 = 1.6 x 10(7) M-1 s-1) at both pH 6.0 and 8.0 as it is with the wild type enzyme. This Compound I species decays rapidly at a rate kappa 2 = 1.01 s-1, pH 7.0, to a second two-electron oxidized species that retains the ferryl (FeIV = O) absorption. EPR studies establish that a ferryl porphyrin radical cation is present in the initial Compound I, but electron transfer from the protein results in formation of a second Compound I species with an unpaired electron on the protein (presumably on Tyr172). The presence or absence of oxidizable amino acids adjacent to the heme is thus a key determinant of whether the second oxidation equivalent in Compound I is found as a porphyrin or protein radical cation.

Animals↗

The role of exogenous/endogenous basic fibroblast growth factor (FGF2) and transforming growth factor beta (TGF beta-1) on human corneal endothelial cells proliferation in vitro.

Adult human corneal endothelial cells (HCEC) have extremely low turnover rates but undergo rapid division in vitro when stimulated with soluble growth factors. We have investigated the role played by FGF2 and TGF beta-1 in the regulation of HCEC growth stimulation. HCEC from donors who were over 30 years old were cultured and experiments performed on cultures between the 2nd and the 6th passage in the presence of 5% NCS. Cell counts revealed a maximal stimulation of 2.1x for FGF2 and 1.9x for TGF beta-1 compared to control cultures. When both factors were added, a synergistic effect was noticed with a maximal stimulation of the proliferation rate of 4.5x over controls. In addition, endogenous FGF2 produced by HCEC was quantitated in a sensitive EIA assay. After 5 days in culture, 10(6) cells contained 150 ng FGF2 and 35 ng was extracted from trypsin-digested ECM. Two molar NaCl washes of ECM released 15.6 ng FGF2, which induced a slight mitogenic activity (1.5x over control) in HCEC cultures, which was partially inhibited by an anti-FGF2 antibody. Northern blot analysis of HCEC extracts revealed the presence of FGF receptors R1 and R2 mRNA. The bioactive FGFRs were demonstrated by the toxic effect of a mitotoxin FGF2-SAP. These results suggest that FGF2 could participate in the autocrine regulation of HCEC proliferation and survival. The synergy between exogenously added FGF2 and TGF beta demonstrates that a combination of different growth factors may be important to stimulate proliferation of these cells in vivo.

Adult↗

Spatiotemporal relationships between a novel Drosophila stripe expressing gene and known segmentation genes by simultaneous visualization of transcript patterns.

We describe the cloning of the Drosophila transcription unit odd-striped (ost), which maps close to the P-element insertion site of the enhancer-trap line 05279. In order rapidly to gain information on its chromosomal localization, and to determine the spatial and temporal expression patterns of ost in whole-mount embryos, we established a double-label in situ hybridization protocol to localize two different DNA or RNA sequences simultaneously. The double-label in situ hybridization method involves digoxigenin- and biotin-labeled DNA probes that are processed to result in blue alkaline phosphatase and brown peroxidase reaction products, respectively. Using reference probes as internal standards, we show that the ost transcription unit is located within the cytogenetic band interval 89A1,2 on the right arm of the third chromosome, and that it exerts diagnostic segmentation gene expression patterns in the embryo. The ost transcripts are initially expressed in an anterior cap at the blastoderm stage, followed by a transient pair-rule gene expression pattern, which eventually changes into a segmental polarity gene pattern at gastrulation. Our results establish detailed spatial and temporal relationships between ost expression and the known patterns of the segmentation genes fushi tarazu and wingless, and demonstrate the potential of the double-label method with differently tagged DNA probes.

Animals↗

Corneal wound healing modulation using basic fibroblast growth factor after excimer laser photorefractive keratectomy.

Photorefractive keratectomy with the 193-nm excimer laser is one of the most promising innovations in refractive surgery. However, routine clinical application is hindered by two main obstacles, i.e., postoperative subepithelial opacity and possible regression of the refractive result. Because we have previously demonstrated beneficial effects of basic fibroblast growth factor (bFGF) on corneal epithelial healing in different in vivo models, we investigated the influence on both epithelial and stromal healing of topical bFGF after excimer laser keratomileusis in a rabbit model. After 7-mm circular deepithelialization, the eyes of 24 New Zealand White rabbits received identical deep stromal laser ablations (depth 50 microns, 6 D, diameter 5 mm) and were randomly assigned to one of four treatment groups [control (phosphate-buffered saline, PBS), bFGF 10 micrograms/application, dexamethasone 0.1%, bFGF + dexamethasone, n = 12 eyes/group]. All treatments were administered four times daily--bFGF until complete epithelial healing, dexamethasone and PBS until 3 months postsurgery. Wound surface regression on time was determined by means of computer-assisted image analysis of fluorescein-stained corneas. Corneal opacity was observed biomicroscopically and graded using a previously established scoring system. After bFGF application for 2-3 days only, a highly significant acceleration in epithelial wound healing speed was found compared with the rate of the other three treatment groups (p < 0.001). A combined therapy (bFGF + steroid) had no effect on the healing rate. Compared with control values, mean scores for subepithelial haze in the other groups were found to be nearly 50% lower during the first 2 postoperative months.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Altered immunohistochemical expression of small proteoglycans in the tumor tissue and stroma of basal cell carcinoma.

Small proteoglycans have been shown to act as receptors for matrix molecules or growth factors and to influence the attachment and the migration of cells. We therefore report here on the immunocytochemical expression of three small proteoglycans, i.e., decorin, biglycan, and the recently described PG-100, in normal human skin and in basal cell carcinoma. In normal human skin, staining for decorin revealed expression throughout the dermis with an increased signal in the papillary dermis, whereas no expression was observed in the epidermis. Biglycan and PG-100 were mainly detected in the epidermis, with biglycan being expressed only in suprabasal layers. In addition, biglycan could be detected in a narrow zone below the basement membrane. In tissue specimens obtained from 12 basal cell carcinomas, the expression of biglycan and PG-100 was absent or strongly down-regulated in the tumor tissue. Tumor cells thus displayed a staining pattern similar to that found on the basal cells of normal human skin. In the stroma surrounding the tumor, however, the expression of biglycan and to a lesser degree decorin was increased when compared with normal human dermis. The increased deposition appears to be due to an increased synthesis of these molecules, as total RNA extracted from basal cell carcinoma tissue revealed an induction of biglycan and decorin mRNA. This study indicates that the expression of proteoglycans in basal cell carcinoma tumor cells and in tumor stroma is altered from that in normal skin.

Animals↗

Gene expression mediated by bacteriophage T3 and T7 RNA polymerases in transgenic trypanosomes.

Messenger RNAs of higher eukaryotes share a functionally essential 5' monomethyl CAP structure generated during a reaction that is linked exclusively to RNA polymerase II transcription. In unicellular parasites belonging to the Kinetoplastida, however, mRNAs acquire their 5' CAP through a trans-splicing reaction which effectively uncouples pol II transcription and capping. Consequently functional mRNAs can be produced by endogenous RNA polymerase I. Here we demonstrate the extension of this flexibility to heterologous bacteriophage polymerases. Transgenic Trypanosoma brucei cell lines stably expressing functional, nuclearly localized T3 or T7 RNA polymerase were established and assayed using reporter plasmids bearing the corresponding phage promoters. In these cell lines the levels of phage promoter-driven gene expression ranges from one half to greater than 5 times that mediated by endogenous pol I. Analysis of 5' ends of transcripts synthesized by the T7 polymerase revealed that they are trans-spliced. Thus the usual eukaryotic link between mRNA production and pol II transcription can be by-passed by the introduced phage polymerases, thereby significantly expanding the critically small panel of promoters currently available for exploitation in reverse genetic approaches in T. brucei.

Animals↗

Relaxing incisions with compression sutures for control of astigmatism after penetrating keratoplasty.

BACKGROUND: Ten per cent of patients with persisting postoperative astigmatism following penetrating keratoplasty (PK) require surgical re-intervention, despite an otherwise "successful" transplant. Relaxing incisions (RIs) in combination with compression sutures seem to be the preferable procedure. However, poor predictability and lack of long-term experience complicate the issue. Here we report the 2-year follow-up results of 25 patients with high PK astigmatism treated by means of RIs and compression sutures. METHODS: Commonly, free-handed RIs were placed at the graft-host interface and 10-0 nylon compression sutures were placed perpendicular to the incisions. PK sutures had been removed no less than 4 months prior to refractive surgery. RESULTS: Nineteen eyes regained a functional vision of > or = 0.4. The net decrease in astigmatism was 6.1 +/- 4.3 D (47 +/- 21%). The mean vector-corrected change in astigmatism was 13.1 +/- 5.7 D. Cylinder axis variation was reasonably low, with a correlation of attempted versus achieved axis of r = 0.85. Within the first 3 months after operation the induced astigmatism regressed by, on average, 5.5 +/- 4.3 D, making intraoperative overcorrection necessary. As an inevitable side effect, refractive procedures resulted in a myopic shift (4.7 +/- 6.9 D) in spherical equivalence. CONCLUSION: RIs and compression sutures are very useful in reducing postkeratoplasty astigmatism if correction of extremely high cylinder (> 10 D) is not intended. However, predictability still remains unsatisfactory and more than one operation may be required.

Adult↗

Mitochondrial DNA variability detected in a single wheat regenerant involves a rare recombination event across a short repeat.

The mitochondrial genome of the selfed progeny of a plant regenerated from long-term somatic tissue culture displays specific structural rearrangements characterized by the appearance of novel restriction fragments. A mitochondrial DNA library was constructed from this selfed progeny in the SalI site of cosmid pHC79 and the novel fragments were subsequently studied. They were shown to arise from reciprocal recombination events involving DNA sequences present in the parental plant. The regions of recombination were sequenced and the nucleotide sequences were aligned with those of the presumptive parental fragments. We characterized an imperfect short repeated DNA sequence, 242 bp long, within which a 7-bp DNA repeat could act as a region of recombination. The use of PCR technology allowed us to show that these fragments were present in both parental plants and tissue cultures as low-abundance sequence arrangements.

Base Sequence↗

An analysis of the Washington Conference Report on bioanalytical method validation.

The Washington Conference Report on bioanalytical method validation is analysed with respect to the requirements for precision and accuracy. It is shown that if the requirements are interpreted too literally, this could lead to disappointment in practice. A better approach is to separate the total measurement error into its constant (bias) and random (precision) components. To ensure that 95% of all methods fall within the acceptance interval of +/- 15% around the true value, would require, for example, the bias to be < or = 8% and the method precision to be < or = 8% relative standard deviation (RSD; n = 5).

Chemistry Techniques, Analytical↗

A two-step mode of stripe formation in the Drosophila blastoderm requires interactions among primary pair rule genes.

The stripe pattern of pair rule gene expression along the anterior-posterior axis of the Drosophila blastoderm embryo represents the first sign of periodicity during the process of segmentation. Striped gene expression can be mediated by distinct cis-acting elements that give rise to individual stripe expression domains in direct response to maternal and first zygotic factors. Here we show that the expression of stripes can also be generated by a different, two-step mode which involves regulatory interactions among the primary pair rule genes hairy (h) and runt (run). Expression of h stripes 3 and 4 is directed by a common cis-acting element that results in an initial broad band of gene expression covering three stripe equivalents. Subsequently, this expression domain is split by repression in the forthcoming interstripe region, a process mediated by a separate cis-acting element that responds to run activity. This second mode of pair rule stripe formation may have evolutionary implications.

Animals↗

Alloimmune neonatal neutropenia resulting from immunization to a high-frequency antigen on the granulocyte Fc gamma receptor III.

BACKGROUND: Alloimmune neonatal neutropenia is mainly caused by NA- or NB1-specific alloantibodies. An antibody in the serum of a Turkish mother who had given birth to an infant with alloimmune neonatal neutropenia showed no NA or NB specificity and was therefore investigated further. STUDY DESIGN AND METHODS: The number of antibody-binding sites was calculated by determination of elutable IgG from granulocytes using a quantitative sandwich enzyme-linked immunosorbent assay. Complement activation was tested by immunofluorescence (C3d) and cytotoxicity tests. The antigen was identified using the antigen-capture assay, monoclonal antibody-specific immobilization of granulocyte antigens, and a modified immunoprecipitation method based upon biotinylation of proteins and visualization by luminescence (luminoimmunoprecipitation). Family study and determination of antigen frequency were done by immunofluorescence and agglutination tests. RESULTS: A noncytotoxic, granulocyte-specific alloantibody that recognized the Fc gamma receptor III, independent of the NA phenotype, was detected, and 242,000 binding sites per cell were calculated. Of granulocytes from 150 randomly selected German blood donors, the alloantibody bound to all. The maternal cells were typed NA1/NA2- and NB1-positive. CONCLUSION: These data reveal the presence of a previously unrecognized, high-frequency epitope on the granulocyte Fc gamma receptor III. Luminoimmunoprecipitation proved to be a simple, nonradioactive technique that was useful in identifying the molecule involved.

Antigens↗

Hierarchies of RNA-processing signals in a trypanosome surface antigen mRNA precursor.

Nearly all trypanosome mRNAs are synthesized as polycistronic precursors, from which mature mRNAs are excised by trans splicing and polyadenylation. Polyadenylation of a procyclic acidic repetitive protein (PARP, or procyclin) transcript was studied by transient transfection of constructs bearing a chloramphenicol acetyltransferase gene linked to the PARP intergenic region. Polyadenylation usually occurred at A residues, about 100 bases upstream of a trans-splicing acceptor signal. The wild-type polyadenylation site has a cryptic trans-splicing signal about 100 bp downstream: deletion or inversion of this signal results in polyadenylation at multiple sites, upstream of other cryptic trans-splicing signals. The PARP mRNA precursor appears to contain a hierarchy of possible processing signals, the function of cryptic ones being revealed only when the dominant ones are deleted or moved. Correct polyadenylation can be restored by addition of trans-splicing signals from other loci. The results indicate that polyadenylation is coupled to downstream trans splicing but that the products of the trans-splicing reaction are not necessarily functional mRNAs.

Animals↗

Basic fibroblast growth factor modulates corneal wound healing after excimer laser keratomileusis in rabbits.

We have previously demonstrated beneficial effects of basic fibroblast growth factor (bFGF) on corneal epithelial healing in different in vivo models. In the present study, we investigated the influence on epithelial and stromal healing of topical bFGF after excimer laser keratomileusis in a rabbit model. The corneas of 24 New Zealand white rabbits were deepithelialized (7-mm diameter) and subsequently received identical deep stromal laser ablations (depth, 50 microns; 6 D; diameter, 5 mm). The animals were randomly assigned to one of four treatment groups: PBS (control); bFGF at 500 ng/application; dexamethasone 0.1%, and bFGF+dexamethasone (n = 12 eyes/group). All treatments were given four times daily; with bFGF being given until complete epithelial healing and dexamethasone and PBS, until 3 months postsurgery. Wound surface regression on time was determined by means of computer-assisted image analysis of fluorescein-stained corneas. Corneal opacity was scored using slit-lamp observation and graded following a previously established scoring system. As compared with the other three treatment groups, a highly significant acceleration in the rate of epithelial wound healing was found after bFGF application for 2-3 days only (P < 0.001). A combined therapy (bFGF+steroid) had no effect on the healing rate. As compared with control values, the peak scores for subepithelial haze were significantly lower in eyes that had received bFGF; the regression on time of the haze in the growth factor group paralleled that in eyes receiving continuous steroid treatment. These results demonstrate for the first time the efficiency of a growth factor in modulating the wound-healing response after excimer laser photoablation.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Spectroscopic detection of chemical intermediates in the reaction of para-substituted benzylamines with bovine serum amine oxidase.

Anaerobic, rapid-scanning stopped-flow spectroscopy has been used to investigate the UV-visible absorbance changes (300-540 nm) that occur in the spectrum of bovine serum amine oxidase during reduction by benzylamine, p-hydroxybenzylamine, and p-methoxybenzylamine. The reaction of enzyme with benzylamine generates detectable relaxations at 310, 340, and 480 nm, which are attributed to the production of reduced cofactor (310 and 480 nm) and to an enzyme-substrate Schiff base complex (340 nm). Additional transients have been observed at 440, 425, and 460 nm with p-hydroxybenzylamine, p-methoxybenzylamine, and p-(N,N-dimethylamino)benzylamine, respectively. These relaxations are ascribed to quinonoid species, formed reversibly from Schiff base complexes between oxidized product and reduced cofactor. With the spectral detection of enzyme-product Schiff base complexes, evidence now exists for each of the postulated chemical intermediates along the reaction path of bovine serum amine oxidase [cf. Hartmann, C., & Klinman, J. P. (1991) Biochemistry 30, 4605]. Anaerobic, single-wavelength stopped-flow data, collected in conjunction with rapid-scanning studies for benzylamine and p-hydroxy-benzylamine, provide approximate rate constants for each of the kinetic processes corresponding to enzyme-substrate Schiff base formation, to enzyme reduction, and to the formation and decay of the quinonoid intermediate.

Amine Oxidase (Copper-Containing)↗

A possible role for the 3'-untranslated region in developmental regulation in Trypanosoma brucei.

A series of Trypanosoma brucei transfection vectors was constructed in which transcription of the luciferase gene was driven by the procyclic acidic repetitive protein (procyclin) promoter. The untranslated regions surrounding the luciferase gene were derived from the actin, fructose bisphosphate aldolase, or PARP loci. Trans-splicing of the resulting transcripts occurred as expected, but the site of 3' polyadenylation was upstream of the position anticipated. The nature of the 3'-untranslated region was crucial to the level of expression in bloodstream forms.

Animals↗